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42#include <linux/module.h>
43#include <linux/proc_fs.h>
44#include <linux/list.h>
45#include <linux/rcupdate.h>
46#include <linux/if_arp.h>
47#include <linux/can/core.h>
48
49#include "af_can.h"
50
51
52
53
54
55#define CAN_PROC_VERSION "version"
56#define CAN_PROC_STATS "stats"
57#define CAN_PROC_RESET_STATS "reset_stats"
58#define CAN_PROC_RCVLIST_ALL "rcvlist_all"
59#define CAN_PROC_RCVLIST_FIL "rcvlist_fil"
60#define CAN_PROC_RCVLIST_INV "rcvlist_inv"
61#define CAN_PROC_RCVLIST_SFF "rcvlist_sff"
62#define CAN_PROC_RCVLIST_EFF "rcvlist_eff"
63#define CAN_PROC_RCVLIST_ERR "rcvlist_err"
64
65static struct proc_dir_entry *can_dir;
66static struct proc_dir_entry *pde_version;
67static struct proc_dir_entry *pde_stats;
68static struct proc_dir_entry *pde_reset_stats;
69static struct proc_dir_entry *pde_rcvlist_all;
70static struct proc_dir_entry *pde_rcvlist_fil;
71static struct proc_dir_entry *pde_rcvlist_inv;
72static struct proc_dir_entry *pde_rcvlist_sff;
73static struct proc_dir_entry *pde_rcvlist_eff;
74static struct proc_dir_entry *pde_rcvlist_err;
75
76static int user_reset;
77
78static const char rx_list_name[][8] = {
79 [RX_ERR] = "rx_err",
80 [RX_ALL] = "rx_all",
81 [RX_FIL] = "rx_fil",
82 [RX_INV] = "rx_inv",
83 [RX_EFF] = "rx_eff",
84};
85
86
87
88
89
90static void can_init_stats(void)
91{
92
93
94
95
96
97 memset(&can_stats, 0, sizeof(can_stats));
98 can_stats.jiffies_init = jiffies;
99
100 can_pstats.stats_reset++;
101
102 if (user_reset) {
103 user_reset = 0;
104 can_pstats.user_reset++;
105 }
106}
107
108static unsigned long calc_rate(unsigned long oldjif, unsigned long newjif,
109 unsigned long count)
110{
111 unsigned long rate;
112
113 if (oldjif == newjif)
114 return 0;
115
116
117 if (count > (ULONG_MAX / HZ)) {
118 printk(KERN_ERR "can: calc_rate: count exceeded! %ld\n",
119 count);
120 return 99999999;
121 }
122
123 rate = (count * HZ) / (newjif - oldjif);
124
125 return rate;
126}
127
128void can_stat_update(unsigned long data)
129{
130 unsigned long j = jiffies;
131
132
133 if (user_reset)
134 can_init_stats();
135
136
137 if (j < can_stats.jiffies_init)
138 can_init_stats();
139
140
141 if (can_stats.rx_frames > (ULONG_MAX / HZ))
142 can_init_stats();
143
144
145 if (can_stats.tx_frames > (ULONG_MAX / HZ))
146 can_init_stats();
147
148
149 if (can_stats.matches > (ULONG_MAX / 100))
150 can_init_stats();
151
152
153 if (can_stats.rx_frames)
154 can_stats.total_rx_match_ratio = (can_stats.matches * 100) /
155 can_stats.rx_frames;
156
157 can_stats.total_tx_rate = calc_rate(can_stats.jiffies_init, j,
158 can_stats.tx_frames);
159 can_stats.total_rx_rate = calc_rate(can_stats.jiffies_init, j,
160 can_stats.rx_frames);
161
162
163 if (can_stats.rx_frames_delta)
164 can_stats.current_rx_match_ratio =
165 (can_stats.matches_delta * 100) /
166 can_stats.rx_frames_delta;
167
168 can_stats.current_tx_rate = calc_rate(0, HZ, can_stats.tx_frames_delta);
169 can_stats.current_rx_rate = calc_rate(0, HZ, can_stats.rx_frames_delta);
170
171
172 if (can_stats.max_tx_rate < can_stats.current_tx_rate)
173 can_stats.max_tx_rate = can_stats.current_tx_rate;
174
175 if (can_stats.max_rx_rate < can_stats.current_rx_rate)
176 can_stats.max_rx_rate = can_stats.current_rx_rate;
177
178 if (can_stats.max_rx_match_ratio < can_stats.current_rx_match_ratio)
179 can_stats.max_rx_match_ratio = can_stats.current_rx_match_ratio;
180
181
182 can_stats.tx_frames_delta = 0;
183 can_stats.rx_frames_delta = 0;
184 can_stats.matches_delta = 0;
185
186
187 mod_timer(&can_stattimer, round_jiffies(jiffies + HZ));
188}
189
190
191
192
193
194static void can_print_rcvlist(struct seq_file *m, struct hlist_head *rx_list,
195 struct net_device *dev)
196{
197 struct receiver *r;
198
199 hlist_for_each_entry_rcu(r, rx_list, list) {
200 char *fmt = (r->can_id & CAN_EFF_FLAG)?
201 " %-5s %08x %08x %pK %pK %8ld %s\n" :
202 " %-5s %03x %08x %pK %pK %8ld %s\n";
203
204 seq_printf(m, fmt, DNAME(dev), r->can_id, r->mask,
205 r->func, r->data, r->matches, r->ident);
206 }
207}
208
209static void can_print_recv_banner(struct seq_file *m)
210{
211
212
213
214
215 seq_puts(m, " device can_id can_mask function"
216 " userdata matches ident\n");
217}
218
219static int can_stats_proc_show(struct seq_file *m, void *v)
220{
221 seq_putc(m, '\n');
222 seq_printf(m, " %8ld transmitted frames (TXF)\n", can_stats.tx_frames);
223 seq_printf(m, " %8ld received frames (RXF)\n", can_stats.rx_frames);
224 seq_printf(m, " %8ld matched frames (RXMF)\n", can_stats.matches);
225
226 seq_putc(m, '\n');
227
228 if (can_stattimer.function == can_stat_update) {
229 seq_printf(m, " %8ld %% total match ratio (RXMR)\n",
230 can_stats.total_rx_match_ratio);
231
232 seq_printf(m, " %8ld frames/s total tx rate (TXR)\n",
233 can_stats.total_tx_rate);
234 seq_printf(m, " %8ld frames/s total rx rate (RXR)\n",
235 can_stats.total_rx_rate);
236
237 seq_putc(m, '\n');
238
239 seq_printf(m, " %8ld %% current match ratio (CRXMR)\n",
240 can_stats.current_rx_match_ratio);
241
242 seq_printf(m, " %8ld frames/s current tx rate (CTXR)\n",
243 can_stats.current_tx_rate);
244 seq_printf(m, " %8ld frames/s current rx rate (CRXR)\n",
245 can_stats.current_rx_rate);
246
247 seq_putc(m, '\n');
248
249 seq_printf(m, " %8ld %% max match ratio (MRXMR)\n",
250 can_stats.max_rx_match_ratio);
251
252 seq_printf(m, " %8ld frames/s max tx rate (MTXR)\n",
253 can_stats.max_tx_rate);
254 seq_printf(m, " %8ld frames/s max rx rate (MRXR)\n",
255 can_stats.max_rx_rate);
256
257 seq_putc(m, '\n');
258 }
259
260 seq_printf(m, " %8ld current receive list entries (CRCV)\n",
261 can_pstats.rcv_entries);
262 seq_printf(m, " %8ld maximum receive list entries (MRCV)\n",
263 can_pstats.rcv_entries_max);
264
265 if (can_pstats.stats_reset)
266 seq_printf(m, "\n %8ld statistic resets (STR)\n",
267 can_pstats.stats_reset);
268
269 if (can_pstats.user_reset)
270 seq_printf(m, " %8ld user statistic resets (USTR)\n",
271 can_pstats.user_reset);
272
273 seq_putc(m, '\n');
274 return 0;
275}
276
277static int can_stats_proc_open(struct inode *inode, struct file *file)
278{
279 return single_open(file, can_stats_proc_show, NULL);
280}
281
282static const struct file_operations can_stats_proc_fops = {
283 .owner = THIS_MODULE,
284 .open = can_stats_proc_open,
285 .read = seq_read,
286 .llseek = seq_lseek,
287 .release = single_release,
288};
289
290static int can_reset_stats_proc_show(struct seq_file *m, void *v)
291{
292 user_reset = 1;
293
294 if (can_stattimer.function == can_stat_update) {
295 seq_printf(m, "Scheduled statistic reset #%ld.\n",
296 can_pstats.stats_reset + 1);
297
298 } else {
299 if (can_stats.jiffies_init != jiffies)
300 can_init_stats();
301
302 seq_printf(m, "Performed statistic reset #%ld.\n",
303 can_pstats.stats_reset);
304 }
305 return 0;
306}
307
308static int can_reset_stats_proc_open(struct inode *inode, struct file *file)
309{
310 return single_open(file, can_reset_stats_proc_show, NULL);
311}
312
313static const struct file_operations can_reset_stats_proc_fops = {
314 .owner = THIS_MODULE,
315 .open = can_reset_stats_proc_open,
316 .read = seq_read,
317 .llseek = seq_lseek,
318 .release = single_release,
319};
320
321static int can_version_proc_show(struct seq_file *m, void *v)
322{
323 seq_printf(m, "%s\n", CAN_VERSION_STRING);
324 return 0;
325}
326
327static int can_version_proc_open(struct inode *inode, struct file *file)
328{
329 return single_open(file, can_version_proc_show, NULL);
330}
331
332static const struct file_operations can_version_proc_fops = {
333 .owner = THIS_MODULE,
334 .open = can_version_proc_open,
335 .read = seq_read,
336 .llseek = seq_lseek,
337 .release = single_release,
338};
339
340static inline void can_rcvlist_proc_show_one(struct seq_file *m, int idx,
341 struct net_device *dev,
342 struct dev_rcv_lists *d)
343{
344 if (!hlist_empty(&d->rx[idx])) {
345 can_print_recv_banner(m);
346 can_print_rcvlist(m, &d->rx[idx], dev);
347 } else
348 seq_printf(m, " (%s: no entry)\n", DNAME(dev));
349
350}
351
352static int can_rcvlist_proc_show(struct seq_file *m, void *v)
353{
354
355 int idx = (int)(long)m->private;
356 struct net_device *dev;
357 struct dev_rcv_lists *d;
358
359 seq_printf(m, "\nreceive list '%s':\n", rx_list_name[idx]);
360
361 rcu_read_lock();
362
363
364 d = &can_rx_alldev_list;
365 can_rcvlist_proc_show_one(m, idx, NULL, d);
366
367
368 for_each_netdev_rcu(&init_net, dev) {
369 if (dev->type == ARPHRD_CAN && dev->ml_priv)
370 can_rcvlist_proc_show_one(m, idx, dev, dev->ml_priv);
371 }
372
373 rcu_read_unlock();
374
375 seq_putc(m, '\n');
376 return 0;
377}
378
379static int can_rcvlist_proc_open(struct inode *inode, struct file *file)
380{
381 return single_open(file, can_rcvlist_proc_show, PDE_DATA(inode));
382}
383
384static const struct file_operations can_rcvlist_proc_fops = {
385 .owner = THIS_MODULE,
386 .open = can_rcvlist_proc_open,
387 .read = seq_read,
388 .llseek = seq_lseek,
389 .release = single_release,
390};
391
392static inline void can_rcvlist_sff_proc_show_one(struct seq_file *m,
393 struct net_device *dev,
394 struct dev_rcv_lists *d)
395{
396 int i;
397 int all_empty = 1;
398
399
400 for (i = 0; i < 0x800; i++)
401 if (!hlist_empty(&d->rx_sff[i])) {
402 all_empty = 0;
403 break;
404 }
405
406 if (!all_empty) {
407 can_print_recv_banner(m);
408 for (i = 0; i < 0x800; i++) {
409 if (!hlist_empty(&d->rx_sff[i]))
410 can_print_rcvlist(m, &d->rx_sff[i], dev);
411 }
412 } else
413 seq_printf(m, " (%s: no entry)\n", DNAME(dev));
414}
415
416static int can_rcvlist_sff_proc_show(struct seq_file *m, void *v)
417{
418 struct net_device *dev;
419 struct dev_rcv_lists *d;
420
421
422 seq_puts(m, "\nreceive list 'rx_sff':\n");
423
424 rcu_read_lock();
425
426
427 d = &can_rx_alldev_list;
428 can_rcvlist_sff_proc_show_one(m, NULL, d);
429
430
431 for_each_netdev_rcu(&init_net, dev) {
432 if (dev->type == ARPHRD_CAN && dev->ml_priv)
433 can_rcvlist_sff_proc_show_one(m, dev, dev->ml_priv);
434 }
435
436 rcu_read_unlock();
437
438 seq_putc(m, '\n');
439 return 0;
440}
441
442static int can_rcvlist_sff_proc_open(struct inode *inode, struct file *file)
443{
444 return single_open(file, can_rcvlist_sff_proc_show, NULL);
445}
446
447static const struct file_operations can_rcvlist_sff_proc_fops = {
448 .owner = THIS_MODULE,
449 .open = can_rcvlist_sff_proc_open,
450 .read = seq_read,
451 .llseek = seq_lseek,
452 .release = single_release,
453};
454
455
456
457
458
459static void can_remove_proc_readentry(const char *name)
460{
461 if (can_dir)
462 remove_proc_entry(name, can_dir);
463}
464
465
466
467
468void can_init_proc(void)
469{
470
471 can_dir = proc_mkdir("can", init_net.proc_net);
472
473 if (!can_dir) {
474 printk(KERN_INFO "can: failed to create /proc/net/can . "
475 "CONFIG_PROC_FS missing?\n");
476 return;
477 }
478
479
480 pde_version = proc_create(CAN_PROC_VERSION, 0644, can_dir,
481 &can_version_proc_fops);
482 pde_stats = proc_create(CAN_PROC_STATS, 0644, can_dir,
483 &can_stats_proc_fops);
484 pde_reset_stats = proc_create(CAN_PROC_RESET_STATS, 0644, can_dir,
485 &can_reset_stats_proc_fops);
486 pde_rcvlist_err = proc_create_data(CAN_PROC_RCVLIST_ERR, 0644, can_dir,
487 &can_rcvlist_proc_fops, (void *)RX_ERR);
488 pde_rcvlist_all = proc_create_data(CAN_PROC_RCVLIST_ALL, 0644, can_dir,
489 &can_rcvlist_proc_fops, (void *)RX_ALL);
490 pde_rcvlist_fil = proc_create_data(CAN_PROC_RCVLIST_FIL, 0644, can_dir,
491 &can_rcvlist_proc_fops, (void *)RX_FIL);
492 pde_rcvlist_inv = proc_create_data(CAN_PROC_RCVLIST_INV, 0644, can_dir,
493 &can_rcvlist_proc_fops, (void *)RX_INV);
494 pde_rcvlist_eff = proc_create_data(CAN_PROC_RCVLIST_EFF, 0644, can_dir,
495 &can_rcvlist_proc_fops, (void *)RX_EFF);
496 pde_rcvlist_sff = proc_create(CAN_PROC_RCVLIST_SFF, 0644, can_dir,
497 &can_rcvlist_sff_proc_fops);
498}
499
500
501
502
503void can_remove_proc(void)
504{
505 if (pde_version)
506 can_remove_proc_readentry(CAN_PROC_VERSION);
507
508 if (pde_stats)
509 can_remove_proc_readentry(CAN_PROC_STATS);
510
511 if (pde_reset_stats)
512 can_remove_proc_readentry(CAN_PROC_RESET_STATS);
513
514 if (pde_rcvlist_err)
515 can_remove_proc_readentry(CAN_PROC_RCVLIST_ERR);
516
517 if (pde_rcvlist_all)
518 can_remove_proc_readentry(CAN_PROC_RCVLIST_ALL);
519
520 if (pde_rcvlist_fil)
521 can_remove_proc_readentry(CAN_PROC_RCVLIST_FIL);
522
523 if (pde_rcvlist_inv)
524 can_remove_proc_readentry(CAN_PROC_RCVLIST_INV);
525
526 if (pde_rcvlist_eff)
527 can_remove_proc_readentry(CAN_PROC_RCVLIST_EFF);
528
529 if (pde_rcvlist_sff)
530 can_remove_proc_readentry(CAN_PROC_RCVLIST_SFF);
531
532 if (can_dir)
533 remove_proc_entry("can", init_net.proc_net);
534}
535